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Start with the partial model in the file Ch 1 3 P 1 8 Build a Model.xlsx . Webmasters.com has developed a powerful new server
Start with the partial model in the file Ch P Build a Model.xlsx Webmasters.com has developed a powerful new server that would be used for corporations' Internet activities. It would cost $ million at Year to buy the equipment necessary to manufacture the server. The project would require net working capital at the beginning of each year in an amount equal to of the year's projected sales; for example, NWCSales The servers would sell for $ per unit, and Webmasters believes that variable costs would amount to $ per unit. After Year the sales price and variable costs will increase at the inflation rate of The company's nonvariable costs would be $ million at Year and would increase with inflation.
The server project would have a life of years. If the project is undertaken, it must be continued for the entire years. Also, the project's returns are expected to be highly correlated with returns on the firm's other assets. The firm believes it could sell units per year.
The equipment would be depreciated over a year period, using MACRS rates. The estimated market value of the equipment at the end of the project's year life is $ Webmasters.com's federalplusstate tax rate is Its cost of capital is for averagerisk projects, defined as projects with a coefficient of variation of NPV between and Lowrisk projects are evaluated with a project cost of capital and highrisk projects at
The data has been collected in the Microsoft Excel file below. Download the spreadsheet and perform the required analysis to answer the questions below. Do not round intermediate calculations.
Download spreadsheet Ch P Build a Modeldxlsx
Develop a spreadsheet model, and use it to find the project's NPV IRR, and payback. Round your answer for the NPV to the nearest dollar and for the IRR and payback to two decimal places.
NPV
$
fill in the blank
IRR
fill in the blank
Regular payback period
fill in the blank
years
Now conduct a sensitivity analysis to determine the sensitivity of NPV to changes in the sales price, variable costs per unit, and number of units sold. Set these variables' values at and above and below their basecase values. Round your answers to the nearest dollar. Use a minus sign to enter a negative value, if any.
Deviation from
NPV with Variables at Different Deviations from Base
Base Case
Sales Price
Variable Cost per Unit
Number of Units Sold
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
$
fill in the blank
Choose the correct graph.
A
B
C
D
The correct graph is
Now conduct a scenario analysis. Assume that there is a probability that bestcase conditions, with each of the variables discussed in Part b being better than its basecase value, will occur. There is a probability of worstcase conditions, with the variables worse than base, and a probability of basecase conditions. Round your answers for the NPV and standard deviation to the nearest dollar and for the coefficient of variation to two decimal places. Use a minus sign to enter a negative value, if any.
Scenario
NPV
Best Case
$
fill in the blank
Base Case
$
fill in the blank
Worst Case
$
fill in the blank
Expected NPV
$
fill in the blank
Standard Deviation
$
fill in the blank
Coefficient of Variation
fill in the blank
If the project appears to be more or less risky than an average project, find its riskadjusted NPV IRR, and payback. Round your answer for the NPV to the nearest dollar and for the IRR and payback to two decimal places. Use a minus sign to enter a negative value, if any.
Riskadjusted NPV
$
fill in the blank
Riskadjusted IRR
fill in the blank
Riskadjusted regular payback period
fill in the blank
years
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